Rivet analyses


title: BESIII_2021_I1854317

Dalitz decay of $D^+_s\to K^0_S\pi^+\pi^0$

Experiment: BESIII ()

Inspire ID: 1854317

Status: VALIDATED NOHEPDATA

Authors: - Peter Richardson

References: - JHEP 06 (2021) 181

Beams: * *

Beam energies: ANY

Run details: - Any process producing D_s+ mesons

Measurement of the mass distributions in the decay $D^+_s\to K^0_S\pi^+\pi^0$ by BES. The data were read from the plots in the paper and therefore for some points the error bars are the size of the point. It is also not clear that any resolution effects have been unfolded.

Source code:BESIII_2021_I1854317.cc

```c++ // -- C++ --

include "Rivet/Analysis.hh"

include "Rivet/Projections/DecayedParticles.hh"

include "Rivet/Projections/UnstableParticles.hh"

namespace Rivet {

/// @brief D_s+ -> KS0 pi+ pi0 class BESIII_2021_I1854317 : public Analysis { public:

/// Constructor
RIVET_DEFAULT_ANALYSIS_CTOR(BESIII_2021_I1854317);


/// @name Analysis methods
/// @{

/// Book histograms and initialise projections before the run
void init() {
  // Initialise and register projections
  UnstableParticles ufs = UnstableParticles(Cuts::abspid == 431);
  declare(ufs, "UFS");
  DecayedParticles DS(ufs);
  DS.addStable(PID::PI0);
  DS.addStable(PID::K0S);
  declare(DS, "DS");
  // histograms
  book(_h_Kpi0, 1, 1, 1);
  book(_h_Kpip, 1, 1, 2);
  book(_h_pipi, 1, 1, 3);
  book(_dalitz, "dalitz", 50, 0.3, 3.5, 50, 0.3, 3.5);
}

/// Perform the per-event analysis
void analyze(const Event& event) {
  static const map<PdgId, unsigned int>& mode = {{211, 1}, {111, 1}, {310, 1}};
  static const map<PdgId, unsigned int>& modeCC = {{-211, 1}, {111, 1}, {310, 1}};
  DecayedParticles DS = apply<DecayedParticles>(event, "DS");
  // loop over particles
  for (unsigned int ix = 0; ix < DS.decaying().size(); ++ix) {
    int sign = 1;
    if (DS.decaying()[ix].pid() > 0 && DS.modeMatches(ix, 3, mode)) {
      sign = 1;
    }
    else if (DS.decaying()[ix].pid() < 0 && DS.modeMatches(ix, 3, modeCC)) {
      sign = -1;
    }
    else
      continue;
    const Particle& K0 = DS.decayProducts()[ix].at(310)[0];
    const Particle& pi0 = DS.decayProducts()[ix].at(111)[0];
    const Particle& pip = DS.decayProducts()[ix].at(sign * 211)[0];
    double mplus = (K0.momentum() + pip.momentum()).mass2();
    double mzero = (K0.momentum() + pi0.momentum()).mass2();
    double mpipi = (pip.momentum() + pi0.momentum()).mass2();
    _dalitz->fill(mzero, mplus);
    _h_pipi->fill(sqrt(mpipi));
    _h_Kpip->fill(sqrt(mplus));
    _h_Kpi0->fill(sqrt(mzero));
  }
}


/// Normalise histograms etc., after the run
void finalize() {
  normalize(_h_Kpi0);
  normalize(_h_Kpip);
  normalize(_h_pipi);
  normalize(_dalitz);
}

/// @}


/// @name Histograms
/// @{
Histo1DPtr _h_Kpi0, _h_Kpip, _h_pipi;
Histo2DPtr _dalitz;
/// @}

};

RIVET_DECLARE_PLUGIN(BESIII_2021_I1854317);

} ```